Kevin Velasquez Carballo
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Biography and Research Information
OverviewAI-generated summary
Kevin Velasquez Carballo's research focuses on the development and characterization of advanced materials for high-energy lithium metal batteries. His work has investigated novel polymeric coatings, specifically 'lithicone,' designed to protect lithium metal anodes and enhance battery performance, particularly when paired with nickel-rich cathode materials. He has also explored atomic layer deposition techniques for creating two-dimensional layered materials like zirconium sulfide. His publications address the critical need for robust interfaces in lithium metal batteries and examine the effects of cathode loadings and anode protection on battery longevity and stability. Velasquez Carballo collaborates with researchers at the University of Arkansas at Fayetteville and the University of Arkansas at Little Rock, contributing to a shared body of work in materials science and energy storage.
Metrics
- h-index: 5
- Publications: 14
- Citations: 80
Selected Publications
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Transformative Surface Chemistry for Long‐Life Nickel‐Rich Layered Cathodes (2026)
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A lithium-ion conductive polymeric coating enables high-performance silicon anodes (2026)
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An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026) (2026)
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An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (2025)
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Examining Wire Bond Coatings for Application in High Power Density Systems (2025)
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Accurately constituting robust interfaces for high-performance high-energy lithium metal batteries (2024)
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Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials (2024)
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Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials (2024)
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A novel polymeric lithicone coating for superior lithium metal anodes (2024)
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Atomic layer deposition of two-dimensional layered zirconium sulfide (2024)
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Effects of cathode loadings and anode protection on the performance of lithium metal batteries (2023)
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Tackling issues of lithium metal anodes with a novel polymeric lithicone coating (2023)
Collaboration Network
Top Collaborators
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- A novel polymeric lithicone coating for superior lithium metal anodes
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Atomic layer deposition of two-dimensional layered zirconium sulfide
Showing 5 of 11 shared publications
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- A novel polymeric lithicone coating for superior lithium metal anodes
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
Showing 5 of 6 shared publications
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- A novel polymeric lithicone coating for superior lithium metal anodes
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- Transformative Surface Chemistry for Long‐Life Nickel‐Rich Layered Cathodes
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- Effects of cathode loadings and anode protection on the performance of lithium metal batteries
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- Lithicone‐Protected Lithium Metal Anodes for Lithium Metal Batteries with Nickel‐Rich Cathode Materials
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- Transformative Surface Chemistry for Long‐Life Nickel‐Rich Layered Cathodes
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